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Correcting libc pow bindings
Adding tests that libc pow(f) functions - have two arguments - behave as expected for simple inputs.
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@@ -49,8 +49,8 @@ foreign libc {
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// 7.3.8 Power and absolute-value functions
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// 7.3.8 Power and absolute-value functions
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cabs :: proc(z: complex_double) -> complex_double ---
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cabs :: proc(z: complex_double) -> complex_double ---
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cabsf :: proc(z: complex_float) -> complex_float ---
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cabsf :: proc(z: complex_float) -> complex_float ---
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cpow :: proc(z: complex_double) -> complex_double ---
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cpow :: proc(x, y: complex_double) -> complex_double ---
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cpowf :: proc(z: complex_float) -> complex_float ---
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cpowf :: proc(x, y: complex_float) -> complex_float ---
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csqrt :: proc(z: complex_double) -> complex_double ---
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csqrt :: proc(z: complex_double) -> complex_double ---
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csqrtf :: proc(z: complex_float) -> complex_float ---
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csqrtf :: proc(z: complex_float) -> complex_float ---
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@@ -0,0 +1,37 @@
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package test_core_libc
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import "core:fmt"
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import "core:os"
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import "core:strings"
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import "core:testing"
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TEST_count := 0
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TEST_fail := 0
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when ODIN_TEST {
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expect :: testing.expect
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log :: testing.log
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} else {
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expect :: proc(t: ^testing.T, condition: bool, message: string, loc := #caller_location) {
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TEST_count += 1
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if !condition {
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TEST_fail += 1
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fmt.printf("[%v] %v\n", loc, message)
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return
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}
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}
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log :: proc(t: ^testing.T, v: any, loc := #caller_location) {
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fmt.printf("[%v] ", loc)
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fmt.printf("log: %v\n", v)
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}
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}
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main :: proc() {
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t := testing.T{}
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test_libc_complex(&t)
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fmt.printf("%v/%v tests successful.\n", TEST_count - TEST_fail, TEST_count)
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if TEST_fail > 0 {
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os.exit(1)
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}
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}
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@@ -0,0 +1,91 @@
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package test_core_libc
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import "core:testing"
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import "core:fmt"
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import "core:c/libc"
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reldiff :: proc(lhs, rhs: $T) -> f64 {
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if lhs == rhs {
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return 0.
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}
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amean := f64((abs(lhs)+abs(rhs)) / 2.)
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adiff := f64(abs(lhs - rhs))
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out := adiff / amean
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return out
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}
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isclose :: proc(lhs, rhs: $T, rtol:f64 = 1e-12, atol:f64 = 1e-12) -> bool {
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adiff := f64(abs(lhs - rhs))
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if adiff < atol {
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return true
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}
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rdiff := reldiff(lhs, rhs)
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if rdiff < rtol {
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return true
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}
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fmt.printf("not close -- lhs:%v rhs:%v -- adiff:%e rdiff:%e\n",lhs, rhs, adiff, rdiff)
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return false
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}
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// declaring here so they can be used as function pointers
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libc_pow :: proc(x, y: libc.complex_double) -> libc.complex_double {
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return libc.pow(x,y)
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}
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libc_powf :: proc(x, y: libc.complex_float) -> libc.complex_float {
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return libc.pow(x,y)
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}
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@test
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test_libc_complex :: proc(t: ^testing.T) {
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test_libc_pow_binding(t, libc.complex_double, f64, libc_pow, 1e-12, 1e-12)
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// f32 needs more atol for comparing values close to zero
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test_libc_pow_binding(t, libc.complex_float, f32, libc_powf, 1e-12, 1e-5)
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}
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@test
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test_libc_pow_binding :: proc(t: ^testing.T, $LIBC_COMPLEX:typeid, $F:typeid, pow: proc(LIBC_COMPLEX, LIBC_COMPLEX) -> LIBC_COMPLEX,
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rtol: f64, atol: f64) {
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// Tests that c/libc/pow(f) functions have two arguments and that the function works as expected for simple inputs
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{
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// tests 2^n
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expected_real : F = 1./16.
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expected_imag : F = 0.
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complex_base := LIBC_COMPLEX(complex(F(2.), F(0.)))
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for n in -4..=4 {
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complex_power := LIBC_COMPLEX(complex(F(n), F(0.)))
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result := pow(complex_base, complex_power)
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expect(t, isclose(expected_real, F(real(result)), rtol, atol), fmt.tprintf("ftype:%T, n:%v reldiff(%v, re(%v)) is greater than specified rtol:%e", F{}, n, expected_real, result, rtol))
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expect(t, isclose(expected_imag, F(imag(result)), rtol, atol), fmt.tprintf("ftype:%T, n:%v reldiff(%v, im(%v)) is greater than specified rtol:%e", F{}, n, expected_imag, result, rtol))
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expected_real *= 2
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}
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}
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{
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// tests (2i)^n
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value : F = 1/16.
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expected_real, expected_imag : F
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complex_base := LIBC_COMPLEX(complex(F(0.), F(2.)))
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for n in -4..=4 {
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complex_power := LIBC_COMPLEX(complex(F(n), F(0.)))
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result := pow(complex_base, complex_power)
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switch n%%4 {
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case 0:
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expected_real = value
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expected_imag = 0.
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case 1:
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expected_real = 0.
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expected_imag = value
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case 2:
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expected_real = -value
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expected_imag = 0.
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case 3:
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expected_real = 0.
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expected_imag = -value
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}
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expect(t, isclose(expected_real, F(real(result)), rtol, atol), fmt.tprintf("ftype:%T, n:%v reldiff(%v, re(%v)) is greater than specified rtol:%e", F{}, n, expected_real, result, rtol))
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expect(t, isclose(expected_imag, F(imag(result)), rtol, atol), fmt.tprintf("ftype:%T, n:%v reldiff(%v, im(%v)) is greater than specified rtol:%e", F{}, n, expected_imag, result, rtol))
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value *= 2
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}
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}
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}
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